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Establishing the effects of mesoporous silica nanoparticle properties on in vivo disposition using imaging-based pharmacokinetics.
Dogra, Prashant; Adolphi, Natalie L; Wang, Zhihui; Lin, Yu-Shen; Butler, Kimberly S; Durfee, Paul N; Croissant, Jonas G; Noureddine, Achraf; Coker, Eric N; Bearer, Elaine L; Cristini, Vittorio; Brinker, C Jeffrey.
Afiliação
  • Dogra P; Mathematics in Medicine Program, Houston Methodist Research Institute, Houston, TX, 77030, USA.
  • Adolphi NL; Department of Biochemistry and Molecular Biology, University of New Mexico, Albuquerque, NM, 87131, USA.
  • Wang Z; Mathematics in Medicine Program, Houston Methodist Research Institute, Houston, TX, 77030, USA.
  • Lin YS; Department of Imaging Physics, University of Texas MD Anderson Cancer Center, Houston, TX, 78701, USA.
  • Butler KS; Department of Internal Medicine, University of New Mexico, Albuquerque, NM, 87131, USA.
  • Durfee PN; Center for Micro-Engineered Materials, University of New Mexico, Albuquerque, NM, 87131, USA.
  • Croissant JG; Chemical and Biological Engineering, University of New Mexico, Albuquerque, NM, 87131, USA.
  • Noureddine A; Sandia National Laboratories, Department of Nanobiology, Albuquerque, NM, 87123, USA.
  • Coker EN; Center for Micro-Engineered Materials, University of New Mexico, Albuquerque, NM, 87131, USA.
  • Bearer EL; Cancer Research and Treatment Center, Molecular Genetics and Microbiology, University of New Mexico, Albuquerque, NM, 87131, USA.
  • Cristini V; Center for Micro-Engineered Materials, University of New Mexico, Albuquerque, NM, 87131, USA.
  • Brinker CJ; Chemical and Biological Engineering, University of New Mexico, Albuquerque, NM, 87131, USA.
Nat Commun ; 9(1): 4551, 2018 10 31.
Article em En | MEDLINE | ID: mdl-30382084
The progress of nanoparticle (NP)-based drug delivery has been hindered by an inability to establish structure-activity relationships in vivo. Here, using stable, monosized, radiolabeled, mesoporous silica nanoparticles (MSNs), we apply an integrated SPECT/CT imaging and mathematical modeling approach to understand the combined effects of MSN size, surface chemistry and routes of administration on biodistribution and clearance kinetics in healthy rats. We show that increased particle size from ~32- to ~142-nm results in a monotonic decrease in systemic bioavailability, irrespective of route of administration, with corresponding accumulation in liver and spleen. Cationic MSNs with surface exposed amines (PEI) have reduced circulation, compared to MSNs of identical size and charge but with shielded amines (QA), due to rapid sequestration into liver and spleen. However, QA show greater total excretion than PEI and their size-matched neutral counterparts (TMS). Overall, we provide important predictive functional correlations to support the rational design of nanomedicines.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Dióxido de Silício / Nanopartículas Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Dióxido de Silício / Nanopartículas Idioma: En Ano de publicação: 2018 Tipo de documento: Article